重要日期1 A.一眼空缺的详细信息2 B.Important instructions-online registration & submission of application 2 C. Important instructions - examination processes 4 D. Detailed CEN 5 1.0 General instructions 5 2.0 Vacancies 7 3.0 Medical standards for the posts 8 4.0 Nationality/citizenship 9 5.0 Age limit 10 6.0 Educational qualifications 11 7.0 Examination fee 11 8.0 Vertical reservation 12 9.0 Horizontal reservation 14 10.0 Ex-servicemen (Ex-SM) 15 11.0 Persons with基准残疾(PWBD)16 12.0无针对员工的异议证书(NOC)21 13.0招聘过程21 14.0标记25 15.0的归一化25.0如何应用25 15.1提交在线申请的步骤27 15.2修改申请的修改30 15.3无效申请 /拒绝31 16.0 HALL票证(e-e-callification 31 16.0 for for for e-e-callification for cb teverifition 32 feverifitive for cb teverifition 32 feverifition 32 cbts / cbts cbats,cbat of CBAT,cbat feverification 3.证书的文件和格式32 18.0假冒/抑制事实 - 警告34 19.0其他34 20.0各种RRB及其网站地址的详细信息在35 21.0以下35 21.0缩写33 CEN 36警告38
芯片包装相互作用包装的影响是整体上互连结构遭受特殊的外部应力。以塑料翻转包裹为例;在填充底漆之前,最高的热载荷发生在模具固定期间。对空气间隙结构的CPI效应进行了250°C的反射温度的无PB-焊料。包装中的基板是有机的,模具尺寸为8x8 mm 2。在略有不同的3D有限元模型上,多级子模型技术和VCCT用于计算最外层焊球下相关接口处的裂纹驱动力。[8,9]在蚀刻停止/钝化(ESL)和低k介电或气隙之间,在每个金属水平上放置在每个金属水平上放置的Horizontal裂纹计算错误。每个裂纹宽0.1 µm,长2 µm,在接线方向上延伸,如图4所示。在完整的低K集成方案中,由于SIO2和低K层之间的弹性不匹配,在M3间的裂纹3中,ERR最高。首先检查了空气间隙实施的效果,用于跨层次的全气隙结构,在该结构中,空气间隙取代了M3的所有金属间介电(IMD)。这导致裂纹3中的ERR中的大约5倍急剧增加。应注意的是
Date/Doc revision: 25-Apr-2023 Project Name: Battery Doorbell Camera TECHNICAL SPECIFICATIONS ● Model Name: XDC03 ● Camera: 2MP ● Field of View: Horizontal: 160°, Vertical: 160° ● Video: Up to 1536P, H.264 10-15FPS ● Audio: 2-way, Full Duplex ● Night Vision : IR up to 10ft ● LEDs: RGB Main Button, Status Indicator ● Motion Sensor: PIR 110° @ 10 ft, AI Human Body Detection ● Microphone: Omni-directional MIC/Sensitivity -26 +/- 1dB ● Speaker: Built-in Speaker 1W, 0.8ohm x1 ● Main Button: Multifunctional ● Case Material: PC+ABS ● Finish/Color: Black ● Power: Type-C USB, Rechargeable Battery ( See电源)●电池:内置6400mAh,不可易换●附件:壁挂式 - 辅助门铃●工作温度:-4°至122°F(-20°至50°C)●操作湿度(存储):80%最大。非调节●天气验证:IP54●调节:FCC,IC连接●Wi-Fi:双band 2.4GHz,802.11 A/B/G/N●加密:WPA-AES,WPA2_AES,WPA2_AES●SUB-GHZ●SUB-GHZ:433 MHz DIMENSIONS:433 MHz DIMENSIONS●高度:5.43 ins:5.43 ins。●宽度:1.77英寸。●深度:0.94英寸。●重量:6.52盎司。(不安装板),7.90盎司。(带安装板)功率●充电:5V2A Type-C USB,DC●6400mAh不可移动的可充电电池,≈3.5个月在正常条件下*
摘要。高分辨率气候预测对于估计未来气候变化影响至关重要。通常使用统计和动力学降压方法或两者的混合体来生成输入数据集用于影响建模。在这项研究中,我们采用了区域气候模型6.0版COSMO-CLM(CCLM)版本,探索动态降低一般循环模型(GCM)的好处,从耦合模型对比度对比6(CMIP6)(CMIP6),集中于中部亚洲的气候变化预测(CA)(CA)。The CCLM, at 0.22° horizontal res- olution, is driven by the MPI-ESM1-2-HR GCM (at 1° spa- tial resolution) for the historical period of 1985–2014 and the projection period of 2019–2100 under three Shared Socioe- conomic Pathways (SSPs), namely the SSP1-2.6, SSP3-7.0, and SSP5-8.5方案。使用气候危害组红外降水与站数据(chirps)作为参考,我们评估了整个历史时期由ERA-Interim重新分析驱动的CCLM的绩效。与其驾驶GCM相比,CCLM的附加值在CA的山区很明显,而CA的山区面临着更高的极端降水事件风险。对于夏季,气候沉淀的平均绝对误差和气候沉淀的偏差(mM d-1)的平均误差(mM d-1)减少了5 mm d-1,对于年度值,夏季的平均绝对误差和3 mm d-1的偏差。在冬季,无法减少错误。但是,在CCLM模拟中,极端预紧值的频率提高了。另外,我们采用CCLM来重新调整未来的气候projec-
2.1 C ONSUMER P ROTECTION AND E MPOWERMENT ........................................................................................ 68 2.2 C URRENT EU R EGULATORY A PPROACH ................................................................................................... 69 2.3 W HAT TO L OOK I NTO ..................................................................................................................................................................................................................................... 73 2.3.1。h orizontal或s ector-特定规则?........................................................................................... 73 2.3.2.欧盟协调或全国差异化的部门 - 特定的规则?..................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 74 2.3.3。 s ector-应限于消费者或应用于所有最终用户的特定保护? .................................. 74 2.3.4。 人际关系通信服务提供商的 s omogened或差异化规则? ..... 76 2.3.5。 还有其他(残留或即将到来的)消费者的问题? ................................................... 77 2.4 P OLICY R ECOMMENDATIONS ................................................................................................................. 77 2.4.1. S TREAMLINING SECTOR - SPECIFIC CONSUMER PROTECTION RULES ............................................................. 77 2.4.2. L EVELLING SECTOR - SPECIFIC CONSUMER RULES ..................................................................................... 80 2.4.3. 在质量上进行激励和激励竞争..................................................................................................................................................................................................................................................................................................................................................................................................... 82 2.4.4。..................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 74 2.3.3。s ector-应限于消费者或应用于所有最终用户的特定保护?.................................. 74 2.3.4。s omogened或差异化规则?..... 76 2.3.5。还有其他(残留或即将到来的)消费者的问题?................................................... 77 2.4 P OLICY R ECOMMENDATIONS ................................................................................................................. 77 2.4.1.S TREAMLINING SECTOR - SPECIFIC CONSUMER PROTECTION RULES ............................................................. 77 2.4.2.L EVELLING SECTOR - SPECIFIC CONSUMER RULES ..................................................................................... 80 2.4.3.在质量上进行激励和激励竞争..................................................................................................................................................................................................................................................................................................................................................................................................... 82 2.4.4。S WITCHING , EASE TO SWITCH AND ‘ ON - NETWORK ' CONSUMER EMPOWERMENT ........................................ 84 2.4.5.A DDRESSING POTENTIAL FUTURE LOCK - IN AND SWITCHING ISSUES ........................................................... 87
Maximum Horizontal Speed 47 mph / 75.6 km/h Maximum Flight Time 46 Minutes Number of Cameras 1 Camera System 20 MP, 4/3"-Type CMOS Sensor 24mm-Equivalent, f/2.8 Lens (84° FoV) Maximum Video Resolution Up to 5.1K at 50 fps / 1080p at 200 fps Sensing System Omnidirectional Control Method Included Transmitter with Smartphone/Mobile Device Maximum Operating Distance 6.2 Miles / 10 km Mobile Device Compatibility Devices up to 3.4" / 86 mm Wide Mobile App Compatible Yes: Android & iOS App Name: DJI Fly Weight 31.6 oz / 895 g (Takeoff) Rotor Configuration Quadcopter Propeller Size 9.4x5.3" Remote ID Yes Built-In Video Light No Aircraft I/O 1x USB-C (Data, Power, Service) Operating Temperature 14 to 104°F / -10到40°C,相机的成像数量1相机系统20 MP,4/3“ -Type CMOS传感器24mm-等效,f/2.8镜头(84°FOV)数字变焦3x最小重点距离3.3'/1 m ISO敏感性范围/1 M ISO敏感性范围/视频:100至6400到6400:800到6400(800至12,800 sups Speed 1/8000 fodus 1/8000 fodus 1/8000 fodus 1/8000 fodus 1/8000 voths speed 1/8000) 5.1K在50 fps/1080p时为200 fps时静止图像支撑高达20 MP(DNG/JPEG)照片模式自动曝光支架(AEB),突发射击,间隔,间隔,飞机MicroSD/MicroSDHC/MicroSDXC(UHS-I)的单射击媒体/存储卡插槽[U3/v30
摘要。我们检查了六个气候模型的北极海冰性能的过去和预计变化,该模型在耦合模型对比的耦合模型对比ISON项目阶段6(CMIP6)中的高分辨率模型对比项目(HighResmip)中进行了调查。在大雷值中,每个实验都使用参考分辨率结构(与典型的CMIP6运行一致)和更高分辨率的配置进行运行。分析了水平网格分辨率在大气模型组件和海洋模型组件中的作用,在北极海冰覆盖的过去和繁殖变化中。模型输出来自耦合的历史(Hist-1950)和Future(HighreRes-Future)运行,用于描述北极海冰的多模型,多分辨率表示,并评估该分辨率增强原因的系统差异(如果有)。我们的结果表明,海冰覆盖的表示与海洋/大气网格之间没有密切的关系。 Horizontal分辨率的影响取决于所检查的海冰特征和所使用的模型。然而,与大气的重新构造相比,海格的重新构成具有更大的作用,涡流的海洋结构通常可以提供更现实的海冰区和海冰边缘的代表。所有型号都大量的海冰缩小:北极从1950年到2050年损失了近95%的海冰量。基于历史表现的模型选择可能会提高模型预测的准确性,并预测北极最早在2047年将无冰。随着整个海冰的损失,注意到总海冰的空间结构的变化及其在冰层中的划分:边际冰区(MIZ)将在2050年到2050年主导冰盖,这表明向新的海冰制度转移到了更接近Cur-
AFOLU Agriculture, Forestry, and Other Land Use BAU Business As Usual BBL Billion Barrel s BCM Billion Cubic Meters BOO Build Own Operate BOOT Build Own Operate Transfer BOT Build Operate Transfer CAPEX Capital Expenditure CCS Carbon Capture and Storage CNG Compressed Natural Gas CO2 Carbon Dioxide CRN Customer Reference Number CSP Concentrated Solar Power DCF Discounted Cash Flow DSO Distribution System Operators EBRD European Bank for Reconstruction and Development ECA Export Credit Agencies EGAS Egyptian Natural Gas Holding Company ESIA Environmental Social and Impact Assessment EIB European Investment Bank EMRC The Energy and Minerals Regulatory Commission FSU Floating Storage Unit FSRU Floating Storage and Regas Unit GDZ Gas Distribution Zones GHG Greenhouse Gas HDD Horizontal Directional Drilling HSE Health, Safety and Environment HGV Heavy Goods Vehicles I&C Industrial & Commercial IFC International Finance Corporation IGEM Institution of Gas Engineers & Managers IPP Independent Power Producer IRR Internal Rate of Return JGTP Jordan Gas Transmission Pipeline Kg Kilogram Ktoe Kilo Tonnes of Oil Equivalent kWh Kilowatt Hour LDC Local Distribution Company LLCR Loan Life Cover Ratio LNG Liquefied Natural Gas LPG Liquefied Petroleum Gas MEMR Ministry of Energy and Mineral Resources MMBtu Million British thermal units每天MMSCF/D百万标准立方英尺MTPA每年MTPA百万吨
图1.5 RORE在AMP7期间与泄漏减少PCL相关的影响,四分位数的泄漏每1,000公里的电源长度和每个物业性能的泄漏(1/4是最高表现的四分位数,4/4是最差的四分位数)18图1.6 Pr19 pr19 pr1 pr1 rore rore rore the Is-performiation the Is-perfortion the Is-perfortion the Is-performiation the Is-performiation the Is-perfortion the Is-perfortion the 4/4/4/表现最差的四分位数)19图2.1 Anglian和工业AMP8 PCL反对历史表现:i。每1,000公里的电源; ii。per 100,000 property 22 Table 2.1 PR24 leakage allowances and proposed leakage reductions in AMP8 23 Figure 2.2 Average enhancement funding received by companies, by quartiles for leakage performance implied by 2029–30 PCLs 25 Figure 2.3 PR24 leakage ODI risk model, P10 and P90 RoRE (%) 27 Figure 3.1 Expenditure to reduce leakage (enhancement): first four years of AMP7 against PR24 DD allowance, £m (2022–23) 31 Figure 3.2 Expenditure to reduce (enhancement) and maintain (base) leakage: first four years of AMP7 against PR24 DD allowance, £m (2022–23) 32 Table 3.1 Leakage model specifications, including 2023– 24 data 35 Figure 3.3 Leakage performance (ML/d) per mains (vertical axis) and per property (horizontal axis) in 2023–24 37图3.4 Ofwat对Anglian泄漏增强的评估,£m(2022-23)39图3.5替换主管以减少泄漏单位成本范围(£/米)42图3.6替换,替换电源以降低泄漏成本,以减少每毫升/d的收益(£,000 000 000千元/d)43
Acronym Description AC Alternating Current ACQ Agreed Contract Quota AEMO Australian Energy Market Operator AN Ammonium Nitrate ANT ANT Energy Solutions ATO Australian Tax Office BOM Bureau of Meteorology BOP Balance of Plant BOS Balance of Stack BTM Behind the Meter CAPEX Capital Expenditure CCS Carbon Capture & Storage CEDI Continuous Electrodeionisation CF Capacity Factor CPI Consumer Price Index CSIRO The Commonwealth Scientific and Industrial Research Organisation DC Direct Current DI water Demineralised Water DNM Dyno Nobel Moranbah EBITDA Earnings Before Interest Taxation Depreciation and Amortisation EPC Engineer, Procure & Construct EPCM Engineer, Procure & Construct Management FCPM Fuel Cell Power Module FEED Front End Engineering Design GCR Ground Coverage Ratio GFT Ground Fixed Tilt GH Grey Hydrogen GHI Global Horizontal Irradiance H 2 Hydrogen H 2 O Water HAZOP Hazard and可操作性研究HV高压HVAC供暖,通风和空调IAR冲击评估报告IPL Incitec Pivot Ltd IRR内部回报率KOH氢氧化钾氢氧化钾LCOE LCOE级别的能源LCOH升级的成本LOCH的氢氢化成本升级了氢的成本 OEM Original Equipment Manufacturer OPEX Operational Expenditure ORC Organic Rankine Cycle P&ID Piping and Instrumentation Diagram PEM Proton Exchange Membrane PLC Programmable Logic Controller PPA Power Purchase Agreement PV Photovoltaic RFP Reinforced Fibre Polymer RH Renewable hydrogen RHF Renewable hydrogen Facility RO Reverse Osmosis ROM Rough Order of Magnitude SAT Single Axis Tracking SHE Safety Health & Environment SLD Single Line Diagram